化学
鉴定(生物学)
细菌
计算生物学
聚苯乙烯
细菌基因组大小
磁珠
生化工程
生物膜
生物降解
过程(计算)
基因组
电位滴定法
色谱法
假单胞菌
微生物学
全基因组测序
细菌遗传学
细菌菌株
细菌生长
转录组
信号(编程语言)
作者
Xueqing Gao,S. Zheng,Tianjia Jiang,Wei Qin
标识
DOI:10.1021/acs.analchem.5c04596
摘要
Biodegradation has been highlighted as a promising strategy to cope with the worldwide plastic waste problems. However, its widespread application remains a major challenge, since the identification of the bacterial strains that are capable of efficiently degrading plastics from various bacterial choices is rather time-consuming. Herein, we report on a novel and universal strategy for rapid identification of plastic-degrading bacteria by using sensor technology. The proposed method is based on the biodegradation-induced Ca2+ ion release, followed by potentiometric detection with an ion-selective electrode. A core-shell structured magnetic bead serves as both the recognizer for the plastic-degrading bacterial cells and the signal reporter for their plastic-degradation capabilities. By using the proposed strategy, two Enterobacter species have been identified as the bacterial candidates for polystyrene (PS) biodegradation. Their PS-degrading capabilities were confirmed by using complete genome sequencing and transcriptomic analysis. As compared to the conventional methods for identifying plastic-degrading bacterial strains, the process could be remarkably shortened from weeks to hours by using the present methodology. Given its high efficiency, this methodology can provide a promising strategy to address the current challenges in the rapid identification of plastic-degrading bacterial strains.
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